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研究赖氨酸残基在大麦蛋白肽链上不同位置对其二级结构和生物活性的影响。

Investigating the effect of different positioning of lysine residues along the peptide chain of mastoparans for their secondary structures and biological activities.

机构信息

CEIS/Department of Biology, Institute of Biosciences of Rio Claro, São Paulo State University (UNESP), Avenue 24-A no 1515, Bela Vista, 13506-900, Rio Claro, SP, Brazil.

出版信息

Amino Acids. 2011 Jan;40(1):77-90. doi: 10.1007/s00726-010-0481-y. Epub 2010 Jan 28.

Abstract

In order to investigate the effect of the different positions of the positive charges generated by the ionization of the side-chain of lysine residues, on the structure-activity relationship of the mastoparans, the peptides Protonectarina-MP (INWKALLDAAKKVL-NH2), Parapolybia-MP (INWKKMAATALKMI-NH2) and Asn-2-Polybia-MP I (INWKKLLDAAKQIL-NH2) and MK-578 (INWLKAKKVAGMIL-NH2) were investigated as models. Thus, the four peptides had their secondary structure studied and were submitted to assays of mast cell degranulation, hemolysis, and antibiosis. The results of the bioassays made clear that those peptides bearing the positive charges positioned at the positions 4/5 and/or from 11 to 13 are the most active ones; meanwhile, the localization of the positive charges in the middle of peptide chain resulted in a poorly active peptide. Thus, Protonectarina-MP, Parapolybia-MP, and Asn-2-Polybia-MP I presented physiologically important hemolysis and antibiosis, while MK-578 presented only a reduced antibiotic activity. Circular dichroism analysis were carried-out in different environments revealing that the anionic environment of a mixture of phosphatidylcholine and phosphatidylglycerol (70:30) liposomes favored the higher helical content of the four peptides in this study in relation to the zwiterionic environment of 100% phosphatidylcholine liposomes. The positioning of the lysine residues at the strategic positions (4/5 and 11-13), flanking and maintaining stable α-helix which extends from the 4th to the 13th residue along the peptide chain, seems to contribute to maximal lytic efficiency of the mastoparans, which in turn results in a more homogeneous hydrophobic surface in the amphipathic structure.

摘要

为了研究赖氨酸残基侧链电离产生的正电荷的不同位置对 Mastoparan 结构-活性关系的影响,选用 Protonectarina-MP(INWKALLDAAKKVL-NH2)、Parapolybia-MP(INWKKMAATALKMI-NH2)和 Asn-2-Polybia-MP I(INWKKLLDAAKQIL-NH2)和 MK-578(INWLKAKKVAGMIL-NH2)作为模型肽进行研究。因此,对这四种肽进行了二级结构研究,并进行了肥大细胞脱颗粒、溶血和抑菌试验。生物测定结果表明,那些在第 4/5 位和/或第 11-13 位带有正电荷的肽是最活跃的;同时,肽链中间正电荷的定位导致肽的活性降低。因此,Protonectarina-MP、Parapolybia-MP 和 Asn-2-Polybia-MP I 表现出重要的溶血和抑菌作用,而 MK-578 仅表现出较弱的抗菌活性。在不同环境下进行的圆二色谱分析表明,磷脂酰胆碱和磷脂酰甘油(70:30)混合脂质体的阴离子环境有利于本研究中四种肽的更高螺旋含量,而 100%磷脂酰胆碱脂质体的两性离子环境则有利于更高螺旋含量。赖氨酸残基在战略位置(4/5 和 11-13)的定位,侧翼并保持稳定的α-螺旋,沿肽链从第 4 位延伸到第 13 位,这似乎有助于 Mastoparan 的最大裂解效率,从而导致在两亲性结构中具有更均匀的疏水性表面。

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